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Multi-scale simulation of non-equilibrium phase transitions under shear flow in dilute polymer solutions

机译:稀聚合物溶液中剪切流作用下非平衡相变的多尺度模拟

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摘要

The phase transition of complex fluids is intrinsically a multi-scale problem. In this paper we propose a multi-scale two-fluid model that couples a coarse-grained microscopic method to the two-fluid framework for studying multi-phase fluids under shear flow. In this model the macroscopic viscoelastic stress is calculated by tracking the massive microscopic Brownian configuration fields in the simulation box. Both the macroscopic and microscopic equations are solved using a modified PISO iterative algorithm based on a finite volume discretization scheme. Our 2D numerical results reproduce numerous dynamic phenomena reported in literature and show that the theoretical model presented here could be a promising multi-scale approach to numerically study multi-phase viscoelastic fluids under flow.
机译:复杂流体的相变本质上是一个多尺度问题。在本文中,我们提出了一种多尺度的两流体模型,该模型将粗糙粒度的微观方法与两流体框架相结合,以研究剪切流下的多相流体。在此模型中,通过跟踪模拟框中的大量微观布朗结构场来计算宏观粘弹性应力。使用基于有限体积离散化方案的改进的PISO迭代算法求解宏观方程和微观方程。我们的2D数值结果重现了文献中报道的许多动态现象,并表明此处介绍的理论模型可能是一种有前景的多尺度方法,用于对流动状态下的多相粘弹性流体进行数值研究。

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